FIELD OF THE INVENTION
[0001] The present invention relates generally to a system to analyze the effect of at least
one allergen on skin and, more specifically, to a diffusion-based, continuous-monitoring
system.
BACKGROUND OF THE INVENTION
[0002] Allergies or Type I hypersensitivity are inflammations caused by unusual sensitivity
to foreign substances. Inflammation is a complex process in which the body's defense
system combats foreign entities. While the battle against foreign entities may be
necessary for the body's survival, some defense systems respond to foreign entities,
even innocuous ones, as dangerous and thereby damage surrounding tissue in the ensuing
conflict. When a person is hypersensitized, these substances are known as allergens.
[0003] Atopic allergy or atopy is an ecogenetic disorder, where genetic background dictates
the response to environmental stimuli, such as pollen, food, dander and insect venoms.
This disorder is generally characterized by an increased ability of lymphocytes to
produce IgE antibodies in response to ubiquitous allergens. Activation of the immune
system by these allergens leads to allergic inflammation and may occur after ingestion,
penetration through the skin or after inhalation.
[0004] The effect of foreign substances on individuals varies. Because of this variation,
individuals are often tested for selected allergies. One type of test that is used
for identifying an allergen that triggers an allergic reaction is a skin test (also
referred to as a scratch test). In one test, a small amount of the suspected allergen
is placed on the skin. The skin is then gently scratched with a sterile needle. For
example, if a specific food allergy is suspected, a skin test uses a dilute liquid
extract of the suspect food. A small drop of this particular extract is placed on
the skin of the forearm or back. This underlying skin is gently scratched through
the small drop with a sterile needle.
[0005] If the skin reddens and, more importantly, if it swells, then the test is read as
positive and an allergy to that substance is considered probable. If there is no reaction,
it is read as negative. If the skin test is positive, it implies that the patient
has a type of antibody (e.g., an IgE antibody) on specialized cells in the skin that
release histamines that cause redness and itching. This type of test has disadvantages
because the reaction is very qualitative in nature and, thus, requires a sufficiently
large exposure site to be observed. Thus, a mild reaction can be difficult to judge.
Additionally, these tests involve a qualitative determination at one point in time,
while most reactions are kinetic in nature. If the observation is not made in the
presence of a physician, any time relationship of the reaction may be lost and the
extent of the reaction may be difficult to determine.
[0006] In addition to skin tests, other tests may be performed to determine allergies. For
example, a special blood test, such as the RAST or the ELISA, may be used to determine
selected allergies. These tests measure the presence of specific types of IgE in the
blood. These tests tend to be more costly than skin tests and the results are not
available immediately. Additionally, these tests involve a qualitative determination
at one point in time, while most reactions are kinetic in nature. As with skin testing,
positive RAST and ELISA tests do not by themselves necessarily result in a final diagnosis.
[0008] It would be desirable to have an improved method of analyzing for allergies.
SUMMARY OF THE INVENTION
[0009] The subject-matter of the present invention is the diffusion-based, continuous-monitoring
system of claim 1.
[0010] A hydrogel or liquid can be topographically applied on the skin to assist in enhancing
the diffusion of at least one antibody, histamine, leukotriene and/or prostaglandins.
The diffusion-based, continuous monitoring device is in communication with the hydrogel
or liquid. The production of the at least one antibody, histamine, leukotriene and/or
prostaglandins is continuously monitored at the area of skin for the desired duration
via the diffusion-based, continuous-monitoring device. The levels of production of
the at least one antibody, histamine, leukotriene and/or prostaglandins are can be
analyzed at the area of skin to determine the effect of the allergen on the skin.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
FIG. 1 is a diffusion-based, continuous-monitoring system shown in a transdermal application
according to one embodiment.
FIG. 2 is the continuous-monitoring system of FIG. 1 being connected to a receiving
module.
DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENTS
[0012] The present invention is directed to a diffusion-based, continuous-monitoring system
to analyze the reaction, if any, of an area of the skin exposed to an allergen. Thus,
you are not analyzing for the allergen, but actually analyzing the reaction to the
allergen. An allergen is defined herein as being a substance that causes a reaction.
[0013] By continuously monitoring information related to at least one antibody, histamines,
leukotrienes and/or prostaglandins at an area of skin, the area of the skin can be
analyzed to determine if an allergic reaction or inflammation is occurring and how
severe the reaction or inflammation is. Antibodies are defined herein as proteins
produced in the blood and tissue to assist in neutralizing and destroying foreign
bodies (antigens). Examples of antibodies include, but are not limited to, Immunoglobulin
E (IgE), Immunoglobulin G (IgG), Immunoglobulin A (IgA) and IgM antibody (Anti-HAV
IgM). Antigens are defined herein as chemical substances (usually proteins) that the
body perceives as foreign in which antigens causes the body to form antibodies against
it when introduced into the body. Antigens may be other substances including, but
not limited to, toxins, bacteria, foreign blood cells, and the cells of transplanted
organs.
[0014] The phrase "information relating to antibodies, histamines, leukotrienes and/or prostaglandins"
includes production, existence, localization, rate of release and/or release time
of antibodies, histamines, leukotrienes and/or prostaglandins. This information may
include amounts, relative concentrations, absolute concentrations and ratios to assist
in determining the effect of an allergen on the skin. The term "information" as defined
herein also includes changes in the amount, relative and absolute concentrations,
and ratios whether in a percentage or absolute context. These "information" changes
may be used over a selected duration of time such as, for example, a time change in
amount, concentration or ratio. The "level" may refer to a time change in amount,
concentration or ratio and compared to a later time change.
[0015] The allergens to be analyzed in, for example, body fluids like ISF (interstitial
fluid), whole blood sample, intracellular and intercellular fluids. The allergens
are often analyzed in ISF because the mode of transportation of most allergic reactions
is initially through the ISF before proceeding to the blood. For example, if the skin
comes into contact with poison ivy, the allergic reaction is initially through the
ISF before it gets into the blood. Thus, it would be desirable to analyze the allergens
in the ISF for poison ivy.
[0016] The information (e.g., production) related to the at least one antibody, histamine,
leukotriene and/or prostaglandins at an area of skin is identified and then quantified.
The quantity of antibodies, histamines, leukotrienes and/or prostaglandins produced
may vary. In one example, an extract of a specific food may be applied to the skin
(e.g., back) by creating small pin perforations such that the food extract is transported
into the body. After the extract is applied, then the production of an antibody, histamine,
leukotriene and/or prostaglandins is continuously monitored at the area of skin to
determine if there is a reaction to the food extract. Many foods may be tested and
some non-limiting common food allergies include eggs, peanuts, milk, nuts, soy, fish,
wheat, peas and shellfish.
[0017] In another example, an extract of a leaf or the leaf itself may be applied to the
skin by creating small pin perforations such that the leaf extract is transported
into the body. After the extract is applied, then the production of an antibody, histamine,
leukotriene and/or prostaglandins is continuously monitored at the area of skin to
determine if there is a reaction to the leaf extract.
[0018] By identifying allergens to a particular individual, such allergens can be avoided
or at least minimized. Additionally, if the allergens are severe, the particular individuals
may have an appropriate remedy nearby to assist in reducing the effects of the allergic
reaction. Additionally, an individual may assist medical personnel in identifying
the cause of the reaction so as to assist in treating the allergic reaction. The individual
may also be better able to quantify any such allergens and the timing of the allergic
effect (how quickly the reaction occurs after exposure to the allergen).
[0019] In addition to food and leaves, it is contemplated that the skin may be tested for
other allergens including, but not limited to, venom from insect stings (e.g., bees
or wasps), pollens (e.g., grass, hay fever, trees and weeds), molds, animal dander
and saliva, chemicals, dust mites, medicines, certain plants (e.g., poison ivy and
poison oak) and other substances.
[0020] According to one embodiment, at least three criteria may be considered in selecting
a suitable diffusion-based, continuous-monitoring system to analyze the production
of at least one antibody, histamine, leukotriene and/or prostaglandins in a body fluid
sample from an area of skin caused by a reaction to an allergen. First, a diffusion-enhancing
process for the skin is selected. Second, a material is selected to assist in maintaining
contact with the skin and further enhance diffusion of the at least one antibody,
histamine, leukotriene and/or prostaglandins in the body fluid sample from an area
of skin. Third, a diffusion-based, continuous-monitoring device is selected to analyze
the production of the at least one antibody, histamine, leukotriene and/or prostaglandins
in the body fluid sample that diffuses from the skin.
[0021] According to one embodiment, the diffusion-enhancing process for the skin is selected
based on factors such as the following: length of time of testing; the antibody, histamine,
leukotriene and/or prostaglandins to be analyzed or monitored; and the area of the
skin from where the antibody, histamine, leukotriene and/or prostaglandins is located.
It is desirable for the diffusion-enhancing process to maintain the diffusion channel
throughout the desired time period.
[0022] Skin abrasion is typically selected when the continuous-testing period is a relatively
short period of time (e.g., less than about 8 hours). Skin abrasion is desirable for
a shorter continuous-testing period because of the minimum impact on the skin. It
is contemplated that a number of skin-abrasion techniques may be used. In one technique,
skin abrasion occurs using a gel material including pumas or other skin-abrasion materials.
In this technique, the gel material including pumas or other skin-abrasion materials
is rubbed on the skin to increase the permeability of the skin. Skin abrasion may
occur by other techniques such as using a generally coarse material (e.g., sandpaper),
tape peeling or pumas paper.
[0023] To increase the porosity of skin (e.g., the stratum cornium, epidermis and/or dermis),
chemical agents and physical agents may be used. The chemical and physical agents
desirably assist in breaking down the lipids on the stratum cornium. The chemical
and physical agents are typically used in short-term solutions and medium-term solutions.
It is contemplated, however, that the chemical and physical agents may be used in
long-tern solutions.
[0024] The chemical agents may be skin hydration or skin exfoliates that increase the hydration
and porosity of the skin. Skin hydration/exfoliates may include those commercially
used in skin products. Some non-limiting examples of chemical agents that may be used
include d-limonene, L-limonene, and alpha-terpinene. These chemical agents act by
extracting lipids from, for example, the stratum cornium, which disrupts the stratum
cornium and desquamates stratum cornium flake.
[0025] There are number of physical processes that can be used to enhance the permeability
of the skin so as to increase the diffusion of the monitored antibody, histamine,
leukotriene and/or prostaglandins of interest. In one process, needle-less jet injectors
are used with very fine, particulates of inert material that are fired directly into
the skin using high-pressure gas. In another process, pulsed magnetic fields may be
used to create transient pores in the skin, resulting in increased permeation. It
is contemplated that other physical processes may be used to enhance the permeability
of the skin.
[0026] If the continuous-testing period is longer (e.g., from about 8 hours to 24 hours),
then a different diffusion-enhancing approach may be selected. For such a period,
various approaches may be selected such as microporation, microneedle-diffusion enhancement,
pressure members, multiple lances, heavier abrasions and ultrasound energy.
[0027] In one embodiment, a microporation or a microneedle-diffusion enhancement approach
may be used for longer continuous testing periods. A microporation approach creates
submillimeter size apertures in the epidermis. In one microporation technique, a laser-poration
technique may be used to deliver laser power directly to the skin to create apertures
or pores. Laser-poration techniques are typically used to form shallow apertures or
pores.
[0028] In a further embodiment, a series of absorbing dots is located in the stratum cornium
and then followed by delivery of a laser that absorbs and softens at each point. The
absorbent material converts the laser power to heat, which combined with pressure,
create the apertures in the stratum cornium.
[0029] A microneedle-diffusion enhancement approach creates apertures in the epidermis and
dermis. In another embodiment, a pressure member is adapted to apply pressure to and
stretch the skin in preparation for forming a tear in the skin. In another approach,
a more heavier abrasion of the skin could be performed such as using a more coarse
material. An example of a more coarse material includes, but is not limited to, a
coarser sandpaper.
[0030] In another embodiment, ultrasound energy is used to disrupt the lipid bilayer of
the stratum cornium so as to increase the skin permeability. Ultrasound energy typically
forms shallow apertures. By increasing the skin permeability, the amount of interstitial
fluid (ISF) used in monitoring the production of antibodies, histamines and/or leukotrienes.
One non-limiting source of an ultrasound energy system is Sontra SonoPrep® ultrasonic
skin permeation system marketed by Sontra Medical Corporation. The SonoPrep® system
applies relatively low frequency ultrasonic energy to the skin for a limited duration
(from about 10 to 20 seconds). The ultrasonic horn contained in the device vibrates
at about 55,000 times per second (55KHz) and applies energy to the skin through the
liquid medium (e.g., hydrogel or liquid) to create cavitation bubbles that expand
and contract in the liquid medium.
[0031] The chemical and physical agents discussed above in the generally short term can
also be used in medium continuous-testing periods to increase and maintain the porosity
of the skin. It is contemplated, however, that the chemical and physical agents may
be used to obtain longer term action. For example, delipidating agents may be used
in combination with physical agents such as ultrasonic preparation to create more
long term diffusional channels.
[0032] If the continuous-testing period is even longer (e.g., at least 24 hours to about
48 hours), a deep, laser-ablation technique or lance may be selected. A deep, laser-ablation
technique is desirable because the monitoring process can function longer due to the
time needed to close the aperture created in the skin. The laser-ablation technique
typically forms wide apertures. It is contemplated that a microneedle diffusion-enhancing
approach, laser poration or lancets may also be used to provide a deeper aperture.
[0033] The size of the antibody, histamine, leukotriene and/or prostaglandins to be analyzed
may also affect the diffusion-enhancing technique to be used. Typically, since many
antibodies (e.g., IgG, IgM and IgE) are large molecules, the diffusion-enhancing process
would desirably form a larger aperture in the skin. Typically, IgA and histamines
are smaller than IgG, IgM and IgE molecules but are still relatively large and, thus,
the diffusion-enhancing process may still desirably form a medium-sized aperture in
the skin.
[0034] The area of the skin where the antibody, histamine, leukotriene and/or prostaglandins
is located is also a consideration in selecting the diffusion-enhancing process. For
example, if the epidermis or the upper part of the dermis is where the antibody, histamine,
leukotriene and/or prostaglandins is to be monitored, the diffusion-enhancing process
would be selected to disrupt the stratum cornium. Examples of such diffusion-enhancing
processes include skin abrasion, skin hydrations (which increase the hydration of
the skin) and skin exfoliates.
[0035] If monitoring of the antibodies, histamines, leukotrienes and/or prostaglandins in
the ISF of the lower dermis is desired, the diffusion-enhancing process is selected
to create diffusion channels deep into the dermis. If monitoring of the antibodies,
histamines, leukotrienes and/or prostaglandins in the ISF in the subcutaneous region
is desired, the diffusion-enhancing process is selected to create diffusion channels
through the dermis into the subcutaneous region. Non-limiting examples of diffusion-enhancing
processes that create deep diffusion channels into the dermis or subcutaneous region
include, but are not limited to, laser poration, microneedles and lancets. It is also
contemplated that an electric discharge with high energy and conductivity may also
be used to create deep diffusion channels.
[0036] The chemical and physical agents discussed above in the generally short term may
also be used in longer continuous-testing periods to increase and maintain the porosity
of the skin.
[0037] In addition to selecting a continuous diffusion-enhancing method, a material is selected
to assist in maintaining contact with the skin and to match the monitoring requirements
in one embodiment. The diffusion-enhancing material maintains desirable skin contact
at all times and assists in maintaining the diffusion channel. The material may be
selected based on factors such as the following: length of monitoring time; the antibody,
histamines, leukotrienes and/or prostaglandins to be monitored; and the area of the
skin from where the antibody, histamines, leukotrienes and/or prostaglandins is located.
For example, the viscosity of the material may be matched with the antibody, histamine,
leukotriene and/or prostaglandins to be monitored.
[0038] Examples of diffusion-enhancing materials that may be used in the diffusion-based,
continuous monitoring system include, but are not limited to, hydrogels, liquids and
a liquid-stabilizing layer containing a liquid or hydrogel. The diffusion-enhancing
material also desirably assists in hydrating the skin and maintaining an opening in
the skin. By maintaining the opening, a liquid bridge is formed such that the antibody,
histamines, leukotrienes and/or prostaglandins diffuses from a layer in the skin through
the opening. The liquid bridge may be between a hydrogel/liquid and a body fluid such
as ISF (interstitial fluid) or a whole blood sample.
[0039] The hydrogels typically have high water content and tacky characteristics. Hydrogels
assist in (a) carrying the antibody, histamine, leukotriene and/or prostaglandins
to the continuous-monitoring system; (b) carrying the allergen to the skin surface;
and (c) hydrating the skin. Hydrogels are typically used with smaller sized antibody,
histamines, leukotrienes and/or prostaglandins, shorter analysis times and an upper
dermis analysis site.
[0040] A hydrogel composition is defined herein as including a cross-linked polymer gel.
The hydrogel composition generally comprises at least one monomer and a solvent. The
solvent is typically substantially biocompatible with the skin. Non-limiting examples
of solvents that may be used in the hydrogel composition include water and a water
mixture. The amount of solvent in the hydrogel is generally from about 10 to about
95 weight percent and may vary depending on the monomer amount, crosslinking, and/or
the desired composition of the gel. One non-limiting example of a hydrogel/liquid
is dimethylsulfoxide (DMSO). DMSO also assists in solubilizing lipids. An example
of a liquid that may be used include an alcohol in combination with water. The chemical
agents discussed above may be added to the hydrogel composition to maintain the porosity
of the skin. It is contemplated that other hydrogels/liquids may be used.
[0041] The hydrogel/liquid may be located in a material (i.e., a liquid-stabilizing layer).
This material may be selected to assist in maintaining contact with the skin as well
as being able to retain the hydrogel/liquid. The liquid-stabilizing layer may include
a chamber where the antibody/histamine/leukotriene/ prostaglandins of interest can
diffuse. One non-limiting example of a material that can be used is a sponge or spongy
material. The spongy material includes unbound liquid such as water and provides some
structure to the unbound water. The spongy material is typically used with larger-sized
antibodies, histamines, leukotrienes and/or prostaglandins, longer monitoring times,
and deeper monitoring sites.
[0042] Other materials may be used to create content with skin and conduct further analysis.
Materials include, but are not limited to, woven materials, non-woven materials, and
polymeric films with apertures or porations formed therein. The polymeric films may
be, for example, cast polymeric films. These materials may be used with liquids to
facilitate diffusion of the material from the skin.
[0043] The amount of hydrogel that is selected is based on the need to provide a hydrated
skin and having the hydrogel remain in intimate contact with the skin. One disadvantage
of using a large amount of hydrogel is the potential impact on the lag time of the
antibody/histamines/leukotrienes/ prostaglandins diffusing to the diffusion-based,
continuous-monitoring system and/or the allergen reaching the skin. Such occurrences
may potentially impact on the analysis time.
[0044] In addition to the allergens discussed above, additives may be added to the hydrogel
or liquid. For example, to assist in dissolving lipids, the hydrogel or liquid may
include SDS (sodium dodecyl (lauryl) sulfate) or SLS (sodium lauryl (laureth) sulfate).
It is contemplated that other additives may be included in the hydrogel or liquid
to assist in dissolving the lipids such as soaps. In another embodiment, DMSO may
be used as an additive to another hydrogel/liquid to assist in solubilizing lipids.
[0045] Additional analysis components may also be added to the hydrogels/liquids. More specifically,
additives may be added to the hydrogels/liquid to assist in monitoring the delivery
of the allergen.
[0046] In another embodiment, an interference-filtering component may be added to the hydrogels/liquids.
These interference-filtering components may include size exclusion, interference-binding
molecules, and/or molecules that remove or convert interfering substances. One type
of non-limiting interference-filtering components include membranes with molecular
weight cutoffs that are intended to keep high molecular proteins from the analysis.
For example, such interference-filtering components may be used to differentiate an
IgM from a IgG response. Some non-limiting examples of interference-binding molecules
are materials with appropriate charges. Another example is changing the ionic charge
nature of the hydrogel or diffusion matrix such that charged interference molecules
are inhibited from getting to the surface of the continuous-monitoring device.
[0047] Hypertonic solutions, hypotonic solutions and buffered solutions may be used as a
diffusion-enhancing material. Hypertonic solutions are solutions having a high solute
concentration, while hypotonic solutions are solutions having a low solute concentration.
Hypertonic solutions assist in driving up the body fluid (e.g., ISF) closer to the
skin surface. Hypotonic solutions, on the other hand, assist in driving up the antibodies/histamines/leukotrienes/prostaglandins
closer to the skin surface. The hypertonic or hypotonic solutions in one embodiment
may be included with the hydrogel or liquid.
[0048] It is contemplated that other additives such an anticoagulants and/or buffers may
be used to assist in maintaining the localized pH near the optimal level. It is contemplated
that other additives may be added to the hydrogel or liquid to assist in monitoring
the production of a specific antibody/histamine/leukotriene/prostaglandins.
[0049] A diffusion-based, continuous-monitoring device is selected that analyzes the production
of antibodies/histamines/leukotrienes/prostagiandins of the body fluid sample that
is diffused from the skin. The diffusion-based, continuous-monitoring device may be
selected from an electrochemical-monitoring system, an optical-monitoring system,
an osmotic-monitoring system and a pressure-based monitoring system. A pressure-based
monitoring system includes systems associated with the binding of an antibody/histamine/leukotriene/prostaglandins
by components of the hydrogel, which results in a volume change in the gel. The monitoring
may be performed in a vertical or horizontal direction with respect to the diffusion
channel(s) formed in the skin. It is contemplated that the antibodies/histamines/leukotrienes/prostaglandins
may be carried out in the material that is selected to assist in maintaining contact
with the skin (e.g., the hydrogel or liquid).
The diffusion-based, continuous-monitoring device is typically located near or at
the skin. The diffusion-based, continuous-monitoring device may be coupled with the
skin and is typically in intimate contact with the skin. For example, the diffusion-based,
continuous-monitoring device may be adhered to the skin with an adhesive. The adhesive
may be the hydrogel itself. In another embodiment, the adhesive is a separate component
whose sole function is to adhere the continuous-monitoring device to the skin. In
a further embodiment, the diffusion-based, continuous-monitoring device may be coupled
to the skin by a mechanical attachment. For example, the mechanical attachment may
be a wrist band (e.g., an elastic band, a watch band, a band with an attachment mechanism
such as a hook and loop mechanism). One example of a hook and loop mechanism is a
Velcro® strap marketed by 3M Corporation of St. Paul, Minnesota. It is contemplated
that other mechanical attachments may be used to couple or attach the continuous-monitoring
device with skin.
[0050] The diffusion-based, continuous-monitoring device may have a variety of forms. For
example, the continuous-monitoring device may be a pad, circular disk, polygonal shaped
or non-polygonal shaped. The continuous-monitoring system may include an analysis
element. For example, a pad with an analysis element may be used instead of, or in
addition to, the analysis element being initially located in the hydrogel or liquid.
In one embodiment, an enzyme may be initially located in the continuous-monitoring
device.
[0051] In one embodiment, the diffusion-based, continuous-monitoring device includes a processor
to process the data, a memory that stores data, and a communications interface. The
data may be stored at regular intervals such as, for example, every minute, every
5 minutes or every 30 minutes. The intervals may be shorter such as every second or
longer such as being several hours apart. It is contemplated that other regular or
non-regular intervals may be used to store the data.
[0052] The data may be any information that assists in monitoring the production of antibodies/histamines/leukotrienes/prostaglandins.
This may include the level of antibody/histamine/leukotriene/prostaglandins, the amount
of antibody/histamine/leukotriene/prostaglandins released, the rate of antibody/histamine/leukotriene/prostaglandins
released, the duration of the release of antibody/histamine/leukotriene/prostaglandins,
the ratios of selected antibody/histamine/leukotriene/prostaglandins to other substances.
By storing the data in the continuous-monitoring device, this data can be accessed
and used to assist in monitoring information related to the antibodies/histamines/leukotrienes/prostaglandins.
It is desirable for the continuous-monitoring device to tabulate, transmit and store
information that assists in analyzing the effect of an allergen on the skin.
[0053] In one embodiment, the continuous-monitoring device is connected to a remote-monitoring
system over a communications link. The communications link between the continuous-monitoring
device and the remote-monitoring system may be wireless, hard wired or a combination
thereof. The wireless communications link may include an RF link, an infrared link
or an inductive magnetic link. The wireless implementation may include an internet
connection. The continuous-monitoring device may communicate via its communication
interface with devices such as a computer, e-mail server, cell phone or telephone.
It is contemplated that the continuous-monitoring device may include other devices
that are capable of storing, sending and/or receiving information.
[0054] A remote-monitoring system enables an individual such as a physician to monitor the
production of antibodies, histamines, leukotrienes and/or prostaglandins from a remote
location. The remote-monitoring system may be located in, for example, a hospital.
The physician may be able to access information from the continuous-monitoring device
via its communications interface using, for example, a computer or telephone. The
remote-monitoring system is especially desirable for patients who are less lucid and
need assistance with monitoring production of antibodies/histamines/leukotrienes/prostaglandins.
It is desirable for the remote-monitoring system to be able to display, calibrate
and store information received from the communications interface.
[0055] The remote-monitoring system may be used to send back instructional information to
the patients. In such an embodiment, diffusion-based continuous-monitoring device
includes a communications link that has a receiver component to receive instructions
from the remote-monitoring system in addition to a transmitter component to transmit
information to the remote-monitoring system.
[0056] In one embodiment, the continuous-monitoring device may forward information over
a communications link in real-time. In another embodiment, the continuous-monitoring
device may store and process the data before forwarding the information over a communications
link in another embodiment.
[0057] Referring to FIG. 1, a diffusion-based, continuous-monitoring system 100 is shown
in a transdermal application. The continuous monitoring system 100 includes a continuous-monitoring
device 130 being placed above skin. The continuous-monitoring device 130 of FIG. 1
includes a processor 132, memory 134, a communication interface 136 and an analysis
component 138. Referring to FIG. 2, the continuous-monitoring device 130 is shown
in communication with a receiving module 140 (e.g., a remote-monitoring station) over
a communications link 142.
The skin as shown in FIG. 1 includes a subcutaneous layer 148, a dermis layer 150,
an epidermis layer 152 and a stratum cornium layer 154. The stratum cornium layer
154 has a plurality of channels 156a-d formed therein. The plurality of channels 156a-d
may be formed by different methods such as discussed above. The channels may be of
different sizes and depths depending on the antibodies/histamines/leukotrienes/prostaglandins
being analyzed and the location of the antibodies/histamines/leukotrienes/prostaglandins
in the skin. The antibody/histamine/leukotriene/prostaglandins of interest may be
located in the different layers of the skin. The antibody/histamine/leukotriene/prostaglandins
of interest are primarily located in the dermis layer 150 or the subcutaneous layer
148. The hydrogel/liquid assists in diffusing the antibody/histamines/leukotrienes/prostaglandins
to the surface of the skin.
[0058] In one embodiment, a hydrogel/liquid is used to assist in diffusing the antibodies/histamines/leukotrienes/prostaglandins
to the surface of the skin. The channel 156c is shown with hydrogel/liquid 160. An
interface 162 is formed between the hydrogel/liquid and the body fluid. The analysis
may be performed in several locations in the continuous-monitoring system 100. For
example, the analysis may be performed using the analysis components 138 in the continuous-monitoring
device 130. The analysis components may include components such as a sensor, an enzyme
or reagent, potentiostat, electrochemical analysis components (e.g., plurality of
electrodes, etc.) and/or optical analysis components (e.g., light source, detector,
etc.). In another example, the analysis may be performed on the skin and/or in the
channels. It is contemplated that the analysis may take place in more than one location.
For example, the hydrogel/liquid may include an analysis portion (e.g., a reagent
or enzyme) that reacts with antibodies/histamines/leukotrienes/prostaglandins in the
channel, while the remainder of the analysis takes place on the skin or in the continuous-monitoring
device 130.
According to one process, a technician programs the diffusion-based, continuous-monitoring
device for operation. The technician may program, for example, the antibody/histamine/leukotriene/prostaglandins
to be monitored, the length of time of the monitoring, rate of when the data is to
be collected, when the response is completed, and when the device can be removed.
The technician may then proceed to form apertures in the skin that function as diffusion
channels as discussed above for the desired time period. The skin is contacted with
at least one selected allergen. It is desirable to contact the skin with the at least
one selected allergen at or near the diffusion channel. It is contemplated, however,
that the skin may be contacted with the at least one selected allergen in a location
away from the diffusion channels. The skin may be contacted with the at least one
selected allergen using different methods. One non-limiting example is to place a
sensor pad with at least one selected allergen on the skin. The technician locates
the continuous-monitoring device on the individual. In one method, the technician
locates the continuous-monitoring device on the arm. It is contemplated that the technician
may locate the continuous-monitoring device on other locations. The continuous-monitoring
device is adapted to process, calibrate, display, store and/or transmit information
related to the antibody/histamine/leukotriene/prostaglandins.
[0059] While the present invention has been described with reference to one or more particular
embodiments, those skilled in the art will recognize that many changes may be made
thereto without departing from the spirit and scope of the present invention. Each
of these embodiments, and obvious variations thereof, is contemplated as falling within
the scope of the invention as defined by the appended claims.
1. A diffusion-based, continuous-monitoring system to analyze the effect of an allergen
on skin, comprising the following components:
A. means for creating at least one channel (156a-d), aperture, or region of enhanced
permeability in an area of skin, the means being one of the following: means for performing
skin abrasion, chemical agents that increase the hydration and porosity of the skin,
needle-less jet injectors, pulsed magnetic fields, means for performing microporation,
means for performing microneedle-diffusion enhancement, pressure members, lancet,
means for performing ultrasound energy or means for performing laser ablation;
B. means for contacting the skin with at least one allergen at or near the at least
one channel (156a-d), aperture or region of enhanced permeability;
C. a hydrogel or a liquid or a liquid-stabilizing layer containing a liquid or hydrogel
for maintaining contact with the skin and maintaining the at least one channel (156a-d),
aperture or region of enhanced permeability for a desired duration, the hydrogel or
liquid or liquid-stabilizing layer containing a liquid or hydrogel being adapted to
assist in diffusing at least one of antibody, histamine, leukotriene and/or prostaglandins
to the surface of the skin; and
D. a diffusion-based, continuous-monitoring device (130) adapted to be located near
or on the skin in the area of the at least one channel (156a-d), aperture or region
of enhanced permeability, said diffusion-based, continuous-monitoring device (130)
comprising
i. an analysis component (138) for analyzing at least one of antibody, histamine,
leukotriene and/or prostaglandins that is diffused to the surface of the skin, said
analysis component (138) being adapted to continuously monitor amounts, relative concentrations,
absolute concentrations and/or ratios and their changes over time for at least one
antibody, histamine, leukotriene and/or prostaglandins for the desired duration, the
analysis component (138) being one of the following: an electrochemical-monitoring
system, an optical-monitoring system, an osmotic- monitoring system or a pressure-monitoring
system,
ii. a memory (134) to store amounts, relative concentrations, absolute concentrations
and/or ratios and their changes over time related to at least one antibody, histamine,
leukotriene and/or prostaglandins at regular intervals, preferably every minute, every
5 minutes or every 30 minutes,
iii. a processor (132) to process the amounts, relative concentrations, absolute concentrations
and/or ratios and their changes over time related to at least one antibody, histamine,
leukotriene and/or prostaglandins, and
iv. a communications interface (136) adapted to forward amounts, relative concentrations,
absolute concentrations and/or ratios and their changes over time related to at least
one antibody, histamine, leukotriene and/or prostaglandins to a remote-monitoring
system.
2. The system of claim 1, wherein the at least one channel (156a-d) or aperture is a
plurality of channels (156a-d) or apertures.
3. The system of one of claims 1 to 2, wherein the diffusion-based, continuous-monitoring
device (130) is a pad.
4. The system of one of the claims 1 to 3, wherein the diffusion-based, continuous-monitoring
device (130) is adapted to be coupled to the skin by means of an adhesive or by a
mechanical attachment.
5. The system of claims 4, wherein the mechanical attachment is a band.
6. The system of one of the claims 1 to 5, wherein the desired duration is at least 8
hours.
7. The system of claim 6, wherein the desired duration is at least 24 hours.
8. The system of one of the claims 1 to 7, wherein the antibody is at least one of Immunoglobulin
E (IgE), Immunoglobulin G (IgG), Immunoglobulin A (IgA) or IgM antibody (Anti-HAV
IgM).
9. The system of one of the claims 1 to 8, wherein the data stored in the memory (134)
can be the level of antibody/histamine/leukotriene/prostaglandins, the amount of antibody/histamine/leukotriene/prostaglandins
released, the rate of antibody/histamine/leukotriene/prostaglandins released, the
duration of the release of antibody/histamine/leukotriene/prostaglandins, the ratios
of selected antibody/histamine/leukotriene/prostaglandins to other substances.
10. The system of one of the claims 1 to 9, wherein the diffusion-based, continuous-monitoring
device (130) further comprising means for displaying information related to the at
least one antibody, histamine, leukotriene and/or prostaglandins.
11. The system of one of the claims 1 to 10, wherein the information includes production,
rate of release and/or release time of the at least one antibody, histamine, leukotriene
and/or prostaglandins.
12. The system of one of the claims 1 to 10, further comprising at least one selected
allergen for contacting the skin with.
13. The system of claim 12, wherein the diffusion-based, continuous-monitoring device
(130) comprises the allergen and is adapted to place the allergen on the skin.
14. The system of one of the claims 1 to 13, wherein the hydrogel or liquid or liquid-stabilizing
layer containing a liquid or hydrogel comprises at least one of the following additives:
additives adapted to dissolve lipids, additives adapted to solubilize lipids, interference-filtering
component, hypertonic solutions, hypotonic solutions, buffered solutions, anticoagulants,
buffers.
15. The system of one of the claims 1 to 13, wherein the hydrogel is adapted to carry
the allergen to the skin surface.
16. The system of one of the claims 1 to 13, wherein the hydrogel or liquid includes a
diagnostic element to assist in analyzing production or release rate of the at least
one antibody, histamine, leukotriene and/or prostaglandins at the area of skin.
17. The system of one of the claims 1 to 16, further comprising a receiving module (140)
and a communications link (142), the diffusion-based, continuous monitoring device
(130) being adapted to connect with the receiving module (140) via the communications
link (142).
18. The system of claim 17, further being adapted to transmit information related to at
least one antibody, histamine, leukotriene and/or prostaglandins via the communications
link (142) to the receiving module (140).
19. The system of claim 18, further being adapted to receive instructions from the receiving
module (140) via the communications link (142) directed to the information related
to at least one antibody, histamine, leukotriene and/or prostaglandins.
20. The system of one of the claims 17 to 19, wherein the communications link (142) between
the diffusion-based, continuous monitoring device (130) and the receiving module (140)
is a wireless system.
21. The system of one of the claims 17 to 19, wherein the communications link (142) between
the diffusion-based, continuous monitoring device (130) and the receiving module (140)
is wired system.
22. The system of one of the claims 17 to 21, wherein the system is adapted to transmit
information between the diffusion-based, continuous monitoring device (130) and the
receiving module (140) at intervals between 5 minutes and 2 hours.
1. Difussionsbasiertes kontinuierliches Überwachungssystem zur Analyse der Wirkung eines
Allergens auf die Haut, das folgende Bestandteile umfasst:
A. Mittel zur Erzeugung zumindest eine Kanals (156a-d), einer Öffnung oder Region
mit erhöhter Permeabilität in einem Hautareal, wobei das Mittel eines der folgenden
ist: Mittel zur Durchführung einer Hautabrasion, chemische Mittel, welche die Hydratation
und Porosität der Haut erhöhen, nadellose Jet-Injektionsgeräte, gepulste Magnetfelder,
Mittel zur Durchführung von Mikroporation, Mittel zur Durchführung von Mikronadel-Diffusionsverstärkung,
Druckelemente, Lanzette, Mittel zur Durchführung von Ultraschallenergie oder Mittel
zur Durchführung von Laserablation;
B. Mittel, um die Haut mit zumindest einem Allergen an dem zumindest einen Kanal (156a-d),
der Öffnung oder Region mit erhöhter Permeabilität, oder in dessen bzw. deren Nähe
in Berührung zu bringen;
C. ein Hydrogel oder eine Flüssigkeit oder eine flüssigkeitsstabilisierende Schicht,
die eine Flüssigkeit oder ein Hydrogel enthält, zur Aufrechterhaltung des Kontakts
mit der Haut und zur Aufrechterhaltung des zumindest einen Kanals (156a-d), der Öffnung
oder Region mit erhöhter Permeabilität für eine gewünschte Dauer, wobei das Hydrogel
oder die Flüssigkeit oder die flüssigkeitsstabilisierende Schicht eine Flüssigkeit
oder ein Hydrogel enthält, die bzw. das zur Unterstützung der Diffusion zumindest
eines Antikörpers, Histamins, Leukotriens und/oder von Prostaglandinen auf die Hautoberfläche
ausgelegt ist;
und
D. eine diffusionsbasierte kontinuierliche Überwachungsvorrichtung (130), die zur
Anordnung in der Nähe oder auf der Haut in dem Bereich des zumindest einen Kanals
(156a-d), der Öffnung oder Region mit erhöhter Permeabilität ausgelegt ist, wobei
die diffusionsbasierte kontinuierliche Überwachungsvorrichtung (130) Folgendes umfasst:
i. einen Analysebestandteil (138) zur Analyse zumindest eines auf die Hautoberfläche
diffundierten Antikörpers, Histamins, Leukotriens und/oder von Prostaglandinen, wobei
der Analysebestandteil (138) zur kontinuierlichen Überwachung von Mengen, relativen
Konzentrationen, absoluten Konzentrationen und/oder Verhältnissen und deren Veränderungen
im Zeitverlauf für zumindest einen Antikörper, ein Histamin, ein Leukotrien und/oder
Prostaglandine für die gewünschte Dauer ausgelegt ist, wobei der Analysebestandteil
(138) einer der folgenden ist: ein elektrochemisches Überwachungssystem, ein optisches
Überwachungssystem, ein osmotisches Überwachungssystem oder ein Drucküberwachungssystem,
ii. einen Speicher (134) zum Speichern von Mengen, relativen Konzentrationen, absoluten
Konzentrationen und/oder Verhältnissen und deren Veränderungen im Zeitverlauf in Bezug
auf zumindest einen Antikörper, ein Histamin, ein Leukotrien und/oder Prostaglandine
in regelmäßigen Abständen, vorzugsweise jede Minute, alle 5 Minuten oder alle 30 Minuten,
iii. einen Prozessor (132) zur Aufbereitung der Mengen, relativen Konzentrationen,
absoluten Konzentrationen und/oder Verhältnisse und deren Veränderungen im Zeitverlauf
in Bezug auf zumindest einen Antikörper, ein Histamin, ein Leukotrien und/oder Prostaglandine,
und
iv. eine Nachrichtenschnittstelle (136), die zur Weiterleitung von Mengen, relativen
Konzentrationen, absoluten Konzentrationen und/oder Verhältnissen und deren Veränderungen
im Zeitverlauf in Bezug auf zumindest einen Antikörper, ein Histamin, ein Leukotrien
und/oder Prostaglandine an ein Fernüberwachungssystem ausgelegt ist.
2. System nach Anspruch 1, worin der zumindest eine Kanal (156a-d) oder die Öffnung eine
Vielzahl von Kanälen (156a-d) oder Öffnungen ist.
3. System nach einem der Ansprüche 1 bis 2, worin die diffusionsbasierte kontinuierliche
Überwachungsvorrichtung (130) ein Pad ist.
4. System nach einem der Ansprüche 1 bis 3, worin die diffusionsbasierte kontinuierliche
Überwachungsvorrichtung (130) zur Verbindung mit der Haut über einen Klebstoff oder
über eine mechanische Befestigung ausgelegt ist.
5. System nach Anspruch 4, worin die mechanische Befestigung ein Band ist.
6. System nach einem der Ansprüche 1 bis 5, worin die gewünschte Dauer zumindest 8 Stunden
beträgt.
7. System nach Anspruch 6, worin die gewünschte Dauer zumindest 24 Stunden beträgt.
8. System nach einem der Ansprüche 1 bis 7, worin der Antikörper zumindest einer von
Immunglobulin E (IgE), Immunglobulin G (IgG), Immunglobulin A (IgA) oder IgM-Antikörper
(Anti-HAV IgM) ist.
9. System nach einem der Ansprüche 1 bis 8, worin die in dem Speicher (134) gespeicherten
Daten die Konzentration von Antikörper/Histamin/Leukotrien/Prostaglandinen, die Menge
von freigesetzten Antikörper/Histamin/Leukotrien/Prostaglandinen, die Rate von freigesetzten
Antikörper/Histamin/Leukotrien/Prostaglandinen, die Dauer der Freisetzung von Antikörper/Histamin/Leukotrien/Prostaglandinen,
die Verhältnisse von ausgewählten Antikörper/Histamin/Leukotrien/Prostaglandinen zu
anderen Substanzen sein können.
10. System nach einem der Ansprüche 1 bis 9, worin die diffusionsbasierte kontinuierliche
Überwachungsvorrichtung (130) ferner ein Mittel zur Anzeige von Informationen in Bezug
auf den zumindest einen Antikörper, das Histamin, das Leukotrien und/oder Prostaglandine
umfasst.
11. System nach einem der Ansprüche 1 bis 10, worin die Information Produktion, Freisetzungsrate
und/oder Freisetzungszeit des zumindest einem Antikörpers, Histamins, Leukotriens
und/oder der Prostaglandine aufweist.
12. System nach einem der Ansprüche 1 bis 10, ferner umfassend zumindest ein ausgewähltes
Allergen, mit dem die Haut in Kontakt gebracht wird.
13. System nach Anspruch 12, worin die diffusionsbasierte kontinuierliche Überwachungsvorrichtung
(130) das Allergen umfasst und zur Platzierung des Allergens auf der Haut ausgelegt
ist.
14. System nach einem der Ansprüche 1 bis 13, worin das Hydrogel oder die Flüssigkeit
oder die flüssigkeitsstabilisierende Schicht, die eine Flüssigkeit oder ein Hydrogel
enthält, zumindest einen der folgenden Zusatzstoffe umfasst: Zusatzstoffe zur Auflösung
von Lipiden, Zusatzstoffe zur Solubilisierung von Lipiden, Interferenzfilter-Bestandteil,
hypertonische Lösungen, hypotonische Lösungen, gepufferte Lösungen, Antikoagulanzien,
Puffer.
15. System nach einem der Ansprüche 1 bis 13, worin das Hydrogel zum Tragen des Allergens
auf der Hautoberfläche ausgelegt ist.
16. System nach einem der Ansprüche 1 bis 13, worin das Hydrogel oder die Flüssigkeit
ein diagnostisches Element zur Unterstützung der Analyse der Produktion oder Freisetzungsrate
des zumindest einen Antikörpers, Histamins, Leukotriens und/oder der Prostaglandine
an dem Hautareal aufweist.
17. System nach einem der Ansprüche 1 bis 16, ferner umfassend ein Empfängermodul (140)
und eine Nachrichtenverbindung (142), wobei die diffusionsbasierte kontinuierliche
Überwachungsvorrichtung (130) zur Verbindung mit dem Empfängermodul (140) über die
Nachrichtenverbindung (142) ausgelegt ist.
18. System nach Anspruch 17, das ferner zur Übertragung von Informationen in Bezug auf
zumindest einen Antikörper, ein Histamin, ein Leukotrien und/oder Prostaglandine über
die Nachrichtenverbindung (142) an das Empfängermodul (140) ausgelegt ist.
19. System nach Anspruch 18, das ferner zum Empfangen von Anweisungen von dem Empfängermodul
(140) über die Nachrichtenverbindung (142) im Zusammenhang mit den Informationen in
Bezug auf zumindest einen Antikörper, ein Histamin, ein Leukotrien und/oder Prostaglandine
ausgelegt ist.
20. System nach einem der Ansprüche 17 bis 19, worin die Nachrichtenverbindung (142) zwischen
der diffusionsbasierten kontinuierlichen Überwachungsvorrichtung (130) und dem Empfängermodul
(140) ein drahtloses System ist.
21. System nach einem der Ansprüche 17 bis 19, worin die Nachrichtenverbindung (142) zwischen
der diffusionsbasierten kontinuierlichen Überwachungsvorrichtung (130) und dem Empfängermodul
(140) ein verkabeltes System ist.
22. System nach einem der Ansprüche 17 bis 21, worin das System zur Übertragung von Informationen
zwischen der diffusionsbasierten kontinuierlichen Überwachungsvorrichtung (130) und
dem Empfängermodul (140) in Intervallen zwischen 5 Minuten und 2 Stunden ausgelegt
ist.
1. Système de surveillance continue basé sur la diffusion pour analyser l'effet d'un
allergène sur la peau, comprenant les composants suivantes :
A. un moyen pour créer au moins un canal (156a-d), ouverture, ou région de perméabilité
accrue dans une zone de la peau, le moyen étant l'un des suivants : un moyen pour
effectuer une abrasion de la peau, des agents chimiques qui augmentent l'hydratation
et la porosité de la peau, des injecteurs à jet sans aiguille, des champs magnétiques
pulsés, un moyen pour effectuer une microporation, un moyen pour produire une amélioration
de la diffusion par micro-aiguilles, des éléments de pression, un bistouri, un moyen
pour appliquer une énergie ultrasonore ou un moyen pour effectuer une ablation laser
;
B. un moyen pour mettre la peau en contact avec au moins un allergène au niveau ou
près de l'au moins un canal (156a-d), ouverture ou région de perméabilité accrue ;
C. un hydrogel ou un liquide ou une couche de stabilisation de liquide contenant un
liquide ou hydrogel pour préserver le contact avec la peau et maintenir l'au moins
un canal (156a-d), ouverture ou région de perméabilité accrue pendant une durée souhaitée,
l'hydrogel ou le liquide ou la couche de stabilisation de liquide contenant un liquide
ou hydrogel adapté pour faciliter la diffusion d'au moins un élément parmi un anticorps,
une histamine, un leucotriène et/ou des prostaglandines jusqu'à la surface de la peau
; et
D. un dispositif de surveillance continue basé sur la diffusion (130) adapté pour
être positionné près de ou sur la peau dans la zone de l'au moins un canal (156a-d),
ouverture ou région de perméabilité accrue, ledit dispositif de surveillance continue
basé sur la diffusion (130) comprenant
i. un composant d'analyse (138) pour analyser au moins un élément parmi un anticorps,
une histamine, un leucotriène et/ou des prostaglandines qui ont diffusé jusqu'à la
surface de la peau, ledit composant d'analyse (138) étant adapté pour surveiller en
continu des quantités, concentrations relatives, concentrations absolues et/ou proportions
et leurs variations avec le temps pour au moins un anticorps, une histamine, un leucotriène
et/ou des prostaglandines pendant la durée souhaitée, le composant d'analyse (138)
étant l'un des suivants : un système de surveillance électrochimique, un système de
surveillance optique, un système de surveillance osmotique ou un système de surveillance
de pression,
ii. une mémoire (134) pour stocker des quantités, concentrations relatives, concentrations
absolues et/ou proportions et leurs variations avec le temps relatives à au moins
un anticorps, une histamine, un leucotriène et/ou des prostaglandines à intervalles
réguliers, de préférence toutes les minutes, toutes les 5 minutes ou toutes les 30
minutes,
iii. un processeur (132) pour traiter les quantités, concentrations relatives, concentrations
absolues et/ou proportions et leurs variations avec le temps relatives à au moins
un anticorps, une histamine, un leucotriène et/ou des prostaglandines, et
iv. une interface de communication (136) adaptée pour transférer des quantités, concentrations
relatives, concentrations absolues et/ou proportions et leurs variations avec le temps
relatives à au moins un anticorps, une histamine, un leucotriène et/ou des prostaglandines
à un système de surveillance à distance.
2. Système selon la revendication 1, dans lequel l'au moins un canal (156a-d) ou ouverture
est une pluralité de canaux (156a-d) ou d'ouvertures.
3. Système selon l'une des revendications 1 et 2, dans lequel le dispositif de surveillance
continue basé sur la diffusion (130) est une compresse.
4. Système selon l'une des revendications 1 à 3, dans lequel le dispositif de surveillance
continue basé sur la diffusion (130) est adapté pour être couplé à la peau au moyen
d'un adhésif ou par une fixation mécanique.
5. Système selon la revendication 4, dans lequel la fixation mécanique est une bande.
6. Système selon l'une des revendications 1 à 5, dans lequel la durée souhaitée est d'au
moins 8 heures.
7. Système selon la revendication 6, dans lequel la durée souhaitée est d'au moins 24
heures.
8. Système selon l'une des revendications 1 à 7, dans lequel l'anticorps en est au moins
un parmi l'immunoglobuline E (IgE), l'immunoglobuline G (IgG), l'immunoglobuline A
(IgA) et l'anticorps IgM (IgM anti-HAV).
9. Système selon l'une des revendications 1 à 8, dans lequel les données stockées dans
la mémoire (134) peuvent être le niveau d'anticorps/histamine/leucotriène/ prostaglandines,
la quantité d'anticorps/histamine/ leucotriène/prostaglandines libérés, le taux d'anticorps/
histamine/leucotriène/prostaglandines libérés, la durée de la libération d'anticorps/histamine/leucotriène/
prostaglandines, les proportions d'anticorps/histamine/ leucotriène/prostaglandines
sélectionnés par rapport à d'autres substances.
10. Système selon l'une des revendications 1 à 9, dans lequel le dispositif de surveillance
continue basé sur la diffusion (130) comprend également un moyen pour afficher des
informations relatives à l'au moins un anticorps, histamine, leucotriène et/ou prostaglandines.
11. Système selon l'une des revendications 1 à 10, dans lequel les informations comprennent
la production, la vitesse de libération et/ou le temps de libération de l'au moins
un anticorps, histamine, leucotriène et/ou prostaglandines.
12. Système selon l'une des revendications 1 à 10, comprenant en outre au moins un allergène
sélectionné pour mettre la peau en contact avec celui-ci.
13. Système selon la revendication 12, dans lequel le dispositif de surveillance continue
basé sur la diffusion (130) comprend l'allergène et est adapté pour placer l'allergène
sur la peau.
14. Système selon l'une des revendications 1 à 13, dans lequel l'hydrogel ou le liquide
ou la couche de stabilisation de liquide contenant un liquide ou hydrogel comprend
au moins un des additifs suivantes : additifs adaptés pour dissoudre les lipides,
additifs adaptés pour solubiliser les lipides, composant filtrant les interférences,
solutions hypertoniques, solutions hypotoniques, solutions tamponnées, anticoagulants,
tampons.
15. Système selon l'une des revendications 1 à 13, dans lequel l'hydrogel est adapté pour
transporter l'allergène jusqu'à la surface de la peau.
16. Système selon l'une des revendications 1 à 13, dans lequel l'hydrogel ou le liquide
comporte un élément de diagnostic pour faciliter l'analyse de la production ou de
la vitesse de libération de l'au moins un anticorps, histamine, leucotriène et/ou
prostaglandines au niveau de la zone de la peau.
17. Système selon l'une des revendications 1 à 16, comprenant en outre un module de réception
(140) et une liaison de communication (142), le dispositif de surveillance continue
basé sur la diffusion (130) étant adapté pour se connecter au module de réception
(140) par la liaison de communication (142).
18. Système selon la revendication 17, étant en outre adapté pour transmettre des informations
relatives à au moins un anticorps, une histamine, un leucotriène et/ou des prostaglandines
par la liaison de communication (142) au module de réception (140).
19. Système selon la revendication 18, étant en outre adapté pour recevoir des instructions
du module de réception (140) par la liaison de communication (142) portant sur les
informations relatives à au moins un anticorps, une histamine, un leucotriène et/ou
des prostaglandines.
20. Système selon l'une des revendications 17 à 19, dans lequel la liaison de communication
(142) entre le dispositif de surveillance continue basé sur la diffusion (130) et
le module de réception (140) est un système sans fil.
21. Système selon l'une des revendications 17 à 19, dans lequel la liaison de communication
(142) entre le dispositif de surveillance continue basé sur la diffusion (130) et
le module de réception (140) est un système filaire.
22. Système selon l'une des revendications 17 à 21, le système étant adapté pour transmettre
des informations entre le dispositif de surveillance continue basé sur la diffusion
(130) et le module de réception (140) à des intervalles compris entre 5 minutes et
2 heures.